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The Improvement Effect of Muscular Activities and Foot Forces according to Sound Stimulus in Muscle Strength Imbalance during Gait

机译:肌肉活性和足力根据肌肉力量不平衡在步态过程中的改善效果

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This study was to develop the balance insole system for detecting and improving the muscle imbalance of left and right side in lower limbs. We were to verify the validation of balance insole system by analyzing the strategy of muscular activities and foot pressure according to sound feedback. We developed the balance insole based FSR sensor modules for estimating the muscle imbalance using detecting foot pressure. The insole system was FPCB have 8-spot FSR sensor with sensitivity range of 64-level. The participants were twenty peoples who have muscle strength differences in left and right legs over 20%. We measured the muscular activity and foot pressure of left and right side of lower limbs in various gait environment for verifying the improvement effect of muscle imbalance according to sound feedback. They performed gait in slope at 0, 5, 10, 15% and velocity at 3, 4, 5km/h. The result showed that the level of muscle imbalance reduced within 30% for sound feedback of balance insole system contrast to high level of muscle imbalance at 169.9~279.15% during normal gait for increasing slope and velocity including foot force results. This study found the validation of balance insole system with sound feedback stimulus. Also, we thought that it is necessary to research on the sensitivity of foot area, detection of muscle imbalance and processing algorithm of correction threshold spot.
机译:本研究是开发鞋垫系统的平衡,以检测和改善下肢左侧和右侧的肌肉不平衡。根据声音反馈,我们通过分析肌肉活动和脚压策略来验证余弦系统的验证。我们开发了基于稳定的FSR传感器模块,用于使用检测脚压估算肌肉不平衡。鞋垫系统是FPCB,具有8位FSR传感器,灵敏度范围为64级。参与者是二十个人,左腿和右腿肌肉强度差异超过20 %。我们在各种步态环境中测量了下肢左侧和右侧的肌肉活性和脚压,以便根据声音反馈来验证肌肉不平衡的改善效果。它们在3,4,5km / h的斜坡上执行步态,在0,5,10,15 %和速度下。结果表明,肌肉不平衡水平降低30 %,用于稳定的斜孔系统的声音反馈与在正常步态期间的169.9〜279.15 %的高水平肌肉不平衡,以增加坡度和速度结果。本研究发现,具有声音反馈刺激的平衡鞋底系统的验证。此外,我们认为有必要研究脚面积,肌肉不平衡检测和校正阈值点的处理算法的敏感性。

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